FAILED
首站-论文投稿智能助手
典型文献
Advanced liquid crystal devices for augmented reality and virtual reality displays:principles and applications
文献摘要:
Liquid crystal displays(LCDs)and photonic devices play a pivotal role to augmented reality(AR)and virtual reality(VR).The recently emerging high-dynamic-range(HDR)mini-LED backlit LCDs significantly boost the image quality and brightness and reduce the power consumption for VR displays.Such a light engine is particularly attractive for compensating the optical loss of pancake structure to achieve compact and lightweight VR headsets.On the other hand,high-resolution-density,and high-brightness liquid-crystal-on-siilicon(LCoS)is a promising image source for the see-through AR displays,especially under high ambient lighting conditions.Meanwhile,the high-speed LCoS spatial light modulators open a new door for holographic displays and focal surface displays.Finally,the ultrathin planar diffractive LC optical elements,such as geometric phase LC grating and lens,have found useful applications in AR and VR for enhancing resolution,widening fiield-of-view,suppressing chromatic aberrations,creating multiplanes to overcome the vergence-accommodation conflict,and dynamic pupil steering to achieve gaze-matched Maxwellian displays,just to name a few.The operation principles,potential applications,and future challenges of these advanced LC devices will be discussed.
文献关键词:
作者姓名:
Kun Yin;En-Lin Hsiang;Junyu Zou;Yannanqi Li;Zhiyong Yang;Qian Yang;Po-Cheng Lai;Chih-Lung Lin;Shin-Tson Wu
作者机构:
College of Optics and Photonics,University of Central Florida,Orlando,FL 32816,USA
引用格式:
[1]Kun Yin;En-Lin Hsiang;Junyu Zou;Yannanqi Li;Zhiyong Yang;Qian Yang;Po-Cheng Lai;Chih-Lung Lin;Shin-Tson Wu-.Advanced liquid crystal devices for augmented reality and virtual reality displays:principles and applications)[J].光:科学与应用(英文版),2022(07):1344-1365
A类:
backlit,headsets,siilicon,fiield,multiplanes
B类:
Advanced,liquid,crystal,devices,augmented,reality,virtual,displays,principles,applications,Liquid,LCDs,photonic,pivotal,role,VR,recently,emerging,high,dynamic,range,HDR,mini,LED,significantly,boost,image,quality,brightness,reduce,power,consumption,Such,engine,particularly,attractive,compensating,optical,loss,pancake,structure,achieve,compact,lightweight,On,other,hand,resolution,density,LCoS,promising,source,see,through,especially,under,ambient,lighting,conditions,Meanwhile,speed,spatial,modulators,open,new,door,holographic,focal,surface,Finally,ultrathin,planar,diffractive,elements,such,geometric,phase,grating,lens,have,found,useful,enhancing,widening,view,suppressing,chromatic,aberrations,creating,overcome,vergence,accommodation,conflict,pupil,steering,gaze,matched,Maxwellian,just,name,few,operation,potential,future,challenges,these,advanced,will,discussed
AB值:
0.623869
相似文献
Broadband 1T-polytype tantalum disulfide saturable absorber for solid-state bulk lasers
Mengxia Wang;Hailong Qiu;Tianwen Yang;Zhengping Wang;Chuanrui Zhao;Yuanan Zhao;Ting Yu;Yuyao Jiang;Meiling Chen;Yafei Lian;Ge Zhang;Hongjun Liu;Zhanggui Hu;Jianda Shao-Laboratory of Thin Film Optics, Shanghai Institute of Optics and Fine Mechanics, Chinese Academy of Sciences, Shanghai 201800, China;Center of Materials Science and Optoelectronics Engineering, University of Chinese Academy of Sciences, Beijing 100049, China;Tianjin Key Laboratory of Functional Crystal Materials, Institute of Functional Crystal, Tianjin University of Technology, Tianjin 300384, China;State Key Laboratory of Crystal Materials, Shandong University, Jinan 250100, China;Laboratory of High Power Fiber Laser Technology, Shanghai Institute of Optics and Fine Mechanics, Chinese Academy of Sciences, Shanghai 201800, China;College of Science, Shanghai University, Shanghai 200444, China;Hangzhou Institute for Advanced Study, University of Chinese Academy of Sciences, Hangzhou 310024, China;e-mail: qiu@tjut.edu.cn;e-mail: yazhao@siom.ac.cn;e-mail: jdshao@siom.ac.cn
Broadband 1T-polytype tantalum disulfide saturable absorber for solid-state bulk lasers
MENGXIA WANG;HAILONG QIU;TIANWEN YANG;ZHENGPING WANG;CHUANRUI ZHAO;YUANAN ZHAO;TING YU;YUYAO JIANG;MEILING CHEN;YAFEI LIAN;GE ZHANG;HONGJUN LIU;ZHANGGUI HU;JIANDA SHAO-Laboratory of Thin Film Optics,Shanghai Institute of Optics and Fine Mechanics,Chinese Academy of Sciences,Shanghai 201800,China;Center of Materials Science and Optoelectronics Engineering,University of Chinese Academy of Sciences,Beijing 100049,China;Tianjin Key Laboratory of Functional Crystal Materials,Institute of Functional Crystal,Tianjin University of Technology,Tianjin 300384,China;State Key Laboratory of Crystal Materials,Shandong University,Jinan 250100,China;Laboratory of High Power Fiber Laser Technology,Shanghai Institute of Optics and Fine Mechanics,Chinese Academy of Sciences,Shanghai 201800,China;College of Science,Shanghai University,Shanghai 200444,China;Hangzhou Institute for Advanced Study,University of Chinese Academy of Sciences,Hangzhou 310024,China
High-frequency enhanced response based on Sb2Te3 topological insulators
SHI ZHANG;CHAOFAN SHI;WEIWEI TANG;LIBO ZHANG;LI HAN;CHENGSEN YANG;ZHENGYANG ZHANG;JIAN WANG;MIAO CAI;GUANHAI LI;CHANGLONG LIU;LIN WANG;XIAOSHUANG CHEN;WEI LU-College of Physics and Optoelectronic Engineering,Hangzhou Institute for Advanced Study,University of Chinese Academy of Sciences,Hangzhou 310024,China;State Key Laboratory of Infrared Physics,Shanghai Institute of Technical Physics,Chinese Academy of Sciences,Shanghai 200083,China;Shanghai Institute of Optics and Fine Mechanics,Chinese Academy of Sciences,Shanghai 201800,China;Department of Optoelectronic Science and Engineering,Donghua University,Shanghai 201620,China;Terahertz Technology Innovation Research Institute,Shanghai Key Laboratory of Modern Optical System,University of Shanghai for Science and Technology,Shanghai 200093,China
机标中图分类号,由域田数据科技根据网络公开资料自动分析生成,仅供学习研究参考。